Perancangan Produk HeatBeatz Food Box with Solar Panel Energy Menggunakan Metode Nigel Cross
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| Issue | Vol 8 No 1 (2025): Talenta Conference Series: Energy and Engineering (EE) | |
| Section | Articles | |
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Copyright (c) 2025 Talenta Conference Series: Energy and Engineering (EE) ![]() This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License. |
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| DOI: | https://doi.org/10.32734/ee.v8i1.2620 | |
| Keywords: | HeatBeatz Food Box with Solar Panel Energy Nigel Cross Perancangan Produk Product Design | |
| Published | 2025-07-28 |
Abstract
Produk adalah barang yang dapat diperdagangkan dengan nilai yang dapat dipasarkan untuk memenuhi berbagai keinginan dan kebutuhan. HeatBeatz Food Box with Solar Panel Energy merupakan inovasi produk yang ramah lingkungan untuk mencegah pemakaian limbah styrofoam yang mampu memberikan dampak buruk bagi lingkungan dan kesehatan. Produk yang dirancang menggunakan energi matahari sebagai sumber energi utama, komponen glow plug sebagai fitur pemanas, dan media relaksasi berupa set audio sebagai fungsi tambahan. Perancangan produk HeatBeatz Food Box with Solar Panel Energy menggunakan 7 langkah Nigel Cross diawali dengan brainstorming untuk menentukan spesifikasi produk. Lalu dilakukan penyebaran kuesioner terbuka dan tertutup menggunakan metode Slovin untuk memahami kebutuhan dan keinginan spesifikasi dari responden. Tahapan pertama Nigel Cross yaitu klarifikasi tujuan menghasilkan diagram pohon tujuan dengan 3 level berbeda. Tahap penentuan fungsi menghasilkan sub-fungsi pembuatan HeatBeatz Food Box with Solar Panel Energy. Tahap penyusunan kebutuhan menghasilkan perbandingan Wish dan Demand dari produk yang dirancang. Penetapan karakteristik menggunakan QFD menghasilkan tingkat kesulitan, derajat kepentingan, dan perkiraan biaya yang ditunjukkan pada house of quality. Tahap pembangkitan alternatif menghasil 3 alternatif dalam perancangan HeatBeatz Food Box with Solar Panel Energy. Tahap evaluasi alternatif menghasilkan kesimpulan bahwa produk HeatBeatz Food Box with Solar Panel Energy terpilih untuk dilakukan perancangan dan pengembangan produk. Tahap improving details menghasilkan biaya perancangan produk sebesar Rp775.000. Hasil flow process chart memberikan informasi perakitan produk yang memakan waktu 3.997 detik. Berdasarkan simulasi produk dengan menggunakan software SolidWorks diperoleh massa produk sebesar 1,420 kg dengan volume 115,719 m3 dan yield strength sebesar 5.73e+07 N/m2.
Products are tradable goods with marketable value to fulfill various wants and needs. HeatBeatz Food Box with Solar Panel Energy is an environmentally friendly product innovation to prevent the use of styrofoam waste that can have a negative impact on the environment and health. The designed product uses solar energy as the main energy source, glow plug components as heating features, and relaxation media in the form of audio sets as additional functions. The product design of HeatBeatz Food Box with Solar Panel Energy using Nigel Cross's 7 steps begins with brainstorming to determine product specifications. Then open and closed questionnaires were distributed using the Slovin method to understand the needs and desires of the respondents. The first stage of Nigel Cross, namely goal clarification, produces a goal tree diagram with 3 different levels. The function determination stage produces the sub-function of making HeatBeatz Food Box with Solar Panel Energy. The needs preparation stage produces a comparison of Wish and Demand from the designed product. Determination of characteristics using QFD results in the level of difficulty, degree of importance, and estimated costs shown in the house of quality. The alternative generation stage resulted in 3 alternatives in the design of HeatBeatz Food Box with Solar Panel Energy. The alternative evaluation stage resulted in the conclusion that the HeatBeatz Food Box with Solar Panel Energy product was selected for product design and development. The improving details stage resulted in a product design cost of Rp775,000. The flow process chart results provide product assembly information that takes 3.997 seconds. Based on product simulation using SolidWorks software, the product mass is 1,420 kg with a volume of 115,719 m3 and yield strength is 5.73e+07 N/m2.






